Lavarra Francesco
Department of Cardiology, Jilin Heart Hospital Changchun, China.
US Cardiol. 2020 May 4;14:e02. doi: 10.15420/usc.2020.07. eCollection 2020.
Coronary bifurcations with significant lesions >10 mm in the side branch (SB) are likely to require two-stent treatment techniques. To date, double kissing Crush (DK-Crush) stenting has demonstrated higher rates of final kissing balloon inflation and better clinical outcomes. The technical iterations that lead to optimal clinical outcomes have been attributed to the first kissing balloon that repairs the distorted proximal segment and fully expands the orifice of the side stent. One potential caution, which relates to all Crush techniques, is the possibility of the guidewire crossing in an inappropriate position toward the Crushed SB stent. When this occurs, the SB stent may be further Crushed, leaving the ostium uncovered, which potentially negates the benefit of the Crush technique. In our experience, proximal side optimization (PSO) during DK-Crush stenting ensures stent size 'accommodation' to the larger vessel diameter in the proximal segment and better strut apposition to the wall, which is particularly important in the ostial segment. The benefits of this additional modification of the established DK-Crush technique are reduction or elimination of the risk of SB stent distortion, increase of the space of optimal wiring, and avoidance of guidewire advancement under the stent struts, even in unfavorable anatomies with extreme angulation. The author describes a step-by-step approach of a proposed PSO technique, which is easy to perform without any additional procedural time or costs.
侧支血管(SB)病变长度>10 mm的冠状动脉分叉病变可能需要采用双支架治疗技术。迄今为止,双吻挤压(DK-Crush)支架置入术已显示出更高的最终吻球囊扩张率和更好的临床结果。导致最佳临床结果的技术迭代归因于第一个吻球囊,它修复了扭曲的近端节段并充分扩张了侧支支架的开口。与所有挤压技术相关的一个潜在注意事项是导丝可能会以不适当的位置穿过挤压的SB支架。当这种情况发生时,SB支架可能会被进一步挤压,导致开口未被覆盖,这可能会抵消挤压技术的益处。根据我们的经验,在DK-Crush支架置入术中进行近端侧支优化(PSO)可确保支架尺寸“适应”近端节段较大的血管直径,并使支架与血管壁更好地贴合,这在开口节段尤为重要。对既定的DK-Crush技术进行这种额外改良的好处包括降低或消除SB支架变形的风险、增加最佳导丝置入空间,以及避免导丝在支架小梁下推进,即使在解剖结构极度成角的不利情况下也是如此。作者描述了一种提议的PSO技术的逐步操作方法,该方法易于实施,且不会增加额外的手术时间或成本。